Mathematical modeling of the effect of different intravenous acetylcysteine regimens on hepatic glutathione regeneration and hepatocyte death following simulated acetaminophen overdose
Publication
, Conference
Thanacoody, HKR; Nijhout, HF; Reed, MC; Thomas, S
Published in: CLINICAL TOXICOLOGY
January 1, 2017
Duke Scholars
Published In
CLINICAL TOXICOLOGY
EISSN
1556-9519
ISSN
1556-3650
Publication Date
January 1, 2017
Volume
55
Issue
7
Start / End Page
753 / 753
Publisher
TAYLOR & FRANCIS LTD
Related Subject Headings
- Toxicology
- 3214 Pharmacology and pharmaceutical sciences
- 1115 Pharmacology and Pharmaceutical Sciences
Citation
APA
Chicago
ICMJE
MLA
NLM
Thanacoody, H. K. R., Nijhout, H. F., Reed, M. C., & Thomas, S. (2017). Mathematical modeling of the effect of different intravenous acetylcysteine regimens on hepatic glutathione regeneration and hepatocyte death following simulated acetaminophen overdose. In CLINICAL TOXICOLOGY (Vol. 55, pp. 753–753). TAYLOR & FRANCIS LTD.
Thanacoody, HK Ruben, H Fred Nijhout, Mike C. Reed, and Simon Thomas. “Mathematical modeling of the effect of different intravenous acetylcysteine regimens on hepatic glutathione regeneration and hepatocyte death following simulated acetaminophen overdose.” In CLINICAL TOXICOLOGY, 55:753–753. TAYLOR & FRANCIS LTD, 2017.
Thanacoody HKR, Nijhout HF, Reed MC, Thomas S. Mathematical modeling of the effect of different intravenous acetylcysteine regimens on hepatic glutathione regeneration and hepatocyte death following simulated acetaminophen overdose. In: CLINICAL TOXICOLOGY. TAYLOR & FRANCIS LTD; 2017. p. 753–753.
Thanacoody, HK Ruben, et al. “Mathematical modeling of the effect of different intravenous acetylcysteine regimens on hepatic glutathione regeneration and hepatocyte death following simulated acetaminophen overdose.” CLINICAL TOXICOLOGY, vol. 55, no. 7, TAYLOR & FRANCIS LTD, 2017, pp. 753–753.
Thanacoody HKR, Nijhout HF, Reed MC, Thomas S. Mathematical modeling of the effect of different intravenous acetylcysteine regimens on hepatic glutathione regeneration and hepatocyte death following simulated acetaminophen overdose. CLINICAL TOXICOLOGY. TAYLOR & FRANCIS LTD; 2017. p. 753–753.
Published In
CLINICAL TOXICOLOGY
EISSN
1556-9519
ISSN
1556-3650
Publication Date
January 1, 2017
Volume
55
Issue
7
Start / End Page
753 / 753
Publisher
TAYLOR & FRANCIS LTD
Related Subject Headings
- Toxicology
- 3214 Pharmacology and pharmaceutical sciences
- 1115 Pharmacology and Pharmaceutical Sciences